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Numerical and experimental analysis of the single droplet evaporation in a ultrasonic spray pyrolysis device

机译:超声波喷雾热解装置中单滴蒸发的数值和实验分析

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摘要

The present study deals with the numerical analysis of the water droplet evaporation in the carrier gas inside an ultrasonic spray pyrolysis (USP) device. Droplet evaporation is studied through numerical computational fluid dynamics simulation using Ansys Fluent version 16.1 software. The governing equations for mass, momentum, and energy contain source terms for the effects of droplet evaporation. The results are provided as time dependent evaporation rate, temperature and diameter of droplet. Additional experimental evaporation of HAuCl4 solution droplets with temperatures of 80, 100 and 120 degrees C was performed on a USP device. The obtained dried particles of gold chloride were characterized with TEM and analysed for their size and shapes to determine the effect of evaporation rate on the dried particle morphology. This provides insight into selecting optimal parameters for gold nanoparticle synthesis with HAuCl4 in USP, for targeted sizes and shapes of the nanoparticles.
机译:本研究涉及超声波喷雾热解(USP)装置内载气中的水滴蒸发的数值分析。 通过使用ANSYS FLUENT 16.1版软件通过数值计算流体动力学模拟研究液滴蒸发。 质量,动量和能量的控制方程包含液滴蒸发效果的源术语。 结果以时间依赖性蒸发速率,温度和液滴直径提供。 在USP装置上进行HauCl4溶液的额外实验蒸发,温度为80,100和120℃。 通过TEM表征获得的干燥氯化颗粒并分析其尺寸和形状,以确定蒸发速率对干燥颗粒形态的影响。 这提供了深入选择在USP中选择HauCl4的金纳米粒子合成的最佳参数,用于纳米颗粒的靶向尺寸和形状。

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